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计数型最小样本量截尾值的序贯检验 被引量:1
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作者 胡思贵 王红蕾 《中国科学:数学》 CSCD 北大核心 2019年第6期931-942,共12页
对具有'高成本、破坏性'计数型产品的可靠性验收试验,序贯检验方案的样本量截尾值对试验的成本预算起着决定性作用.为降低试验的成本预算,本文对最小样本量截尾值序贯检验(minimum truncated sample size sequential test, MTST... 对具有'高成本、破坏性'计数型产品的可靠性验收试验,序贯检验方案的样本量截尾值对试验的成本预算起着决定性作用.为降低试验的成本预算,本文对最小样本量截尾值序贯检验(minimum truncated sample size sequential test, MTST)进行研究,给出MTST的定义、性质及求解方法.通过与目前广泛采用的国际标准IEC1123及序贯网图检验进行比较,结果表明MTST显著地减少了样本量截尾值.为进一步减少序贯检验的样本量截尾值,当已知产品质量的先验信息时,本文研究了Bayes最小样本量截尾值序贯检验方案(Bayesian minimum truncated sample size sequential test, BMTST),与MTST的比较表明, BMTST极大地减少了序贯检验的样本量截尾值及平均试验次数,能更好地缩减'高成本、破坏性'产品的试验成本预算及平均试验费用. 展开更多
关键词 序贯分析 截尾序贯检验 实验设计 BAYES分析
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Space-confined and substrate-directed synthesis of transition-metal dichalcogenide nanostructures with tunable dimensionality 被引量:2
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作者 Zhuojun Duan Tao Chen +14 位作者 Jianwei Shi Jin Li Kui Song Chan Zhang Sujuan Ding Bo Li Guang Wang sigui hu Xiaoyue He Chaoyu He hua Xu Xinfeng Liu Chuanhong Jin Jianxin Zhong Guolin Hao 《Science Bulletin》 SCIE EI CAS CSCD 2020年第12期1013-1021,M0004,共10页
Atomically thin transition-metal dichalcogenide(TMDC) nanostructures are predicted to exhibit novel physical properties that make them attractive candidates for the fabrication of electronic and optoelectronic devices... Atomically thin transition-metal dichalcogenide(TMDC) nanostructures are predicted to exhibit novel physical properties that make them attractive candidates for the fabrication of electronic and optoelectronic devices. However, TMDCs tend to grow in the form of two-dimensional nanoplates(NPs) rather than one-dimensional nanoribbons(NRs) due to their native layered structure. Herein, we have developed a space-confined and substrate-directed chemical vapor deposition strategy for the controllable synthesis of WS2, WSe2, MoSe2, MoS2, WS2(1-x)Se2x NPs and NRs. TMDC NRs with lengths ranging from several micrometers to 100 μm have been obtained and the widths of TMDC NRs can be effectively tuned.Moreover, we found that TMDC NRs show different growth behaviors on van der Waals(vdW) and nonvd W substrates. The micro-nano structures, optical and electronic properties of synthesized TMDC NRs have been systematically investigated. This approach provides a general strategy for controllable synthesis of TMDC NRs, which makes these materials easily accessible as functional building blocks for novel optoelectronic devices. 展开更多
关键词 Transition-metal dichalcogenide Space-confined and substrate-directed strategy NANORIBBON NANOPLATE Chemical vapor deposition
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